Find the reactions at support A. Z 5 kN/m 4m 7 kN/m B 777 5m C X
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- Find the reactions at D and B ..Take F1=200 N,F2=175 N, F3=150N, M=28 N.m, * F1 F2 45 85mm +75 mm- M F3 B D 125 N -100 mm- 150 mm 50 mm 1 Add file2. Find the reactions at A and B. 4" 4" 12 C D 6" 4 IB 7" A 3 T = 30 lb5. DRAW THE FIGURE THEN SOLVE FOR THE REACTIONS AT A AND B. 3DN 15N KN Im * lan -4m B
- A The reaction in the x-direction at joint A in Figure is: O-5.774 KN 5.774 KN O 5.0 kN 5 KN OOKN E 30" 30" F 10 kN D B ALL DIMENSIONS IN METRES (0.5774) (0.5774)Find the reactions at D and B..Take F1=150 „N,F2=75 N, F3=200N, M=17 N.m F1 45- 85mm- -75 mm M. F3 125 N -100 mm- 150 mm 50 mmDetermine the components of reaction at E. Take that P= 5.1 kN and w = 3.6 kN/m (Figure 1) Figure 1 of 1 1.5 m -1.5 m
- Situation 8- The beam is supported at A and supported by a cable at B as shown in Figure AP-4.20. 20. Determine the reaction at A, in N. Answer: 513.20 N 21. Determine the tension force in the cable, in N. Answer: 355.56 N 2 m ACable 800 N/m B 30 Flgure AP-4.20For the following calculate the reactions at A and B. 2 kN-m 6 kN-m 60° 2 m5 kN/m 5 kN/m 40 kN 10 m 10 m 5 m Determine the moment reaction at A. MA = Blank 1 kN-m Blank 1 Add your answer Determine the vertical reaction at A. RA = Blank 1 kN Blank 1 Add your answer Determine the reaction at the roller support. Rc = Blank 1 kN Blank 1 Add your answer
- Find the Reactions of support? 9 kN-m 6 kN D C 3 m 3 m 3 m 45°Find the reactions at D and B ..Take F1=200 N,F2=175 N, F3=150N, M=28 N.m, * F1 F2 85mm -75 mm M. 125 N 100 mm- 150 mm 50 mmConsider the following diagram. Find the reactive forces and moments at the fixed point A necessary tomaintain equilibrium if an applied force with components FZ = 50N, FY = 100N, and FX = 0N is exertedat point C in the positive z-direction. Distance a = 1 m and distance b = 0.7 m.